A Labile Regulatory Copper Ion Lies Near the T1 Copper Site in the Multicopper Oxidase CueO
Лабильный регуляторный ион меди расположен вблизи центра T1 в мультикупровой оксидазе CueO
2003-08-01
SCID: 54.1/jud3rkqx
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CueO multicopper oxidaseT1 copper sitecopper homeostasislabile regulatory copper sitetrinuclear copper cluster
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Abstract (AI)
CueO, a multicopper oxidase, is part of the copper-regulatory cue operon in Escherichia coli, is expressed under conditions of copper stress and shows enhanced oxidase activity when additional copper is present. The 1.7-A resolution structure of a crystal soaked in CuCl2 reveals a Cu(II) ion bound to the protein 7.5 A from the T1 copper site in a region rich in methionine residues. The trigonal bipyramidal coordination sphere is unusual, containing two methionine sulfur atoms, two aspartate carboxylate oxygen atoms, and a water molecule. Asp-439 both ligates the labile copper and hydrogen-bonds to His-443, which ligates the T1 copper. This arrangement may mediate electron transfer from substrates to the T1 copper. Mutation of residues bound to the labile copper results in loss of oxidase activity and of copper tolerance, confirming a regulatory role for this site. The methionine-rich portion of the protein, which is similar to that of other proteins involved in copper homeostasis, does not display additional copper binding. The type 3 copper atoms of the trinuclear cluster in the structure are bridged by a chloride ion that completes a square planar coordination sphere for the T2 copper atom but does not affect oxidase activity.
Key Findings
1
A 1.7 Å CueO structure reveals a labile Cu(II) ion positioned 7.5 Å from the T1 copper site in a methionine-rich region.
2
Asp-439 links the labile copper to His-443, a T1-copper ligand, suggesting this site may mediate substrate-to-T1 electron transfer.
3
Mutating residues coordinating the labile copper abolishes oxidase activity and copper tolerance, confirming its regulatory importance.
4
The methionine-rich region binds no additional copper, while a chloride bridges the type 3 copper atoms without affecting oxidase activity.
5
The regulatory copper ion has unusual trigonal-bipyramidal coordination by two methionines, two aspartate oxygens, and water.
Research Object
the labile regulatory Cu(II) site near the T1 copper site in the multicopper oxidase CueO from Escherichia coli
Research Subject
the site’s copper coordination, role in electron transfer and regulation of oxidase activity and copper tolerance
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2003-08-01
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